Experimental investigation and numerical simulation of electrochemical response of Mg-Al-Zn-Ca alloy

被引:0
|
作者
Chatterjee, S. [1 ]
Keshava, B. [1 ]
Kumar, H. [1 ]
Vishwakarma, A. [1 ]
Kundu, S. [1 ]
Mandal, T. [1 ]
机构
[1] Indian Inst Engn Sci & Technol, Met & Mat Engn, Howrah 711103, W Bengal, India
关键词
Magnesium alloy; heat treatment; differential scanning calorimetry; potentiodynamic polarisation; impedance spectroscopy; Galvanic corrosion; COMSOL (R) multiphysics; MECHANICAL-PROPERTIES; IN-VITRO; CALORIMETRIC ANALYSIS; MAGNESIUM ALLOYS; MICROSTRUCTURE; CORROSION; EVOLUTION; VIVO; AZ31; SR;
D O I
10.1177/1478422X251321942
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study focuses on the preparation of an Mg-Al-Zn-Ca alloy for biomedical applications and examines the impact of post-casting heat treatments on its electrochemical, thermal and mechanical properties. The alloy's detailed degradation behaviour was examined through immersion tests, potentiodynamic polarisation, and electrochemical impedance spectroscopy in a simulated body fluid. Micro-structural characterisation and phase analysis were performed by optical microscopy, scanning electron microscopy and X-ray diffraction. It has been observed that the cooling rate during post-solutionisation heat treatment significantly influences the evolution of alpha and beta phases and subsequently alters the alloys' mechanical properties and degradation behaviour. The slowest cooling rate in the furnace-cooled sample favoured re-precipitation of the beta phase along grain boundaries and demonstrated the highest hardness and corrosion rate. The representative micrographs of the alloy were numerically simulated using level set scheme in COMSOL (R) Multiphysics software to investigate galvanic corrosion behaviour.
引用
收藏
页数:14
相关论文
共 50 条
  • [31] Effect of Ca and Zn alloying on the structure and properties of Al - 2.5% Mg alloy
    Naumova, E. A.
    Petrzhik, M., I
    Shurkin, P. K.
    Sokorev, A. A.
    NON-FERROUS METALS, 2019, (01): : 22 - 27
  • [32] Vibration behavior of light metals: Al–Zn alloy and Mg–Al–Zn alloy
    Fei-Yi Hung
    Truan-Sheng Lui
    Li-Hui Chen
    Han-Wen Chang
    Zong-Fu Chen
    Journal of Materials Science, 2007, 42 : 5020 - 5028
  • [33] A transmission electron microscopy investigation of crystallography of τ-Mg32(Al, Zn)49 precipitates in a Mg-Zn-Al alloy
    Shi, Z-Z
    Zhang, W-Z
    SCRIPTA MATERIALIA, 2011, 64 (02) : 201 - 204
  • [34] Experimental study and microstructure simulation of Zn-Al-Mg coatings
    De Bruycker, E.
    De Cooman, B.-C.
    De Meyer, M.
    REVUE DE METALLURGIE-CAHIERS D INFORMATIONS TECHNIQUES, 2005, 102 (7-8): : 543 - 550
  • [35] Electrochemical assessment of the Mg-Zn-Ca alloy degradation in Hanks' physiological solution
    Acosta, Gloria
    Mena-Morcillo, Emmanuel
    Veleva, Lucien
    REVISTA DE METALURGIA, 2020, 56 (04)
  • [36] Experimental investigation and thermodynamic calculation of the Al-Mg-Zn system
    Liang, P
    Tarfa, T
    Robinson, JA
    Wagner, S
    Ochin, P
    Harmelin, MG
    Seifert, HJ
    Lukas, HL
    Aldinger, F
    THERMOCHIMICA ACTA, 1998, 314 (1-2) : 87 - 110
  • [37] Electrochemical Evaluation of Mg and a Mg-Al 5%Zn Metal-Rich Primers for Protection of Al-Zn-Mg-Cu Alloy in NaCl
    Korjenic, A.
    Blohm, L.
    Scully, J.R.
    Corrosion, 2024, 80 (08) : 851 - 877
  • [39] Investigation of structure and hardening of Al-Zn-Mg alloys with Ca and Fe
    Shurkin, P. K.
    Belov, N. A.
    Akopyan, T. K.
    TOPICAL ISSUES OF RATIONAL USE OF NATURAL RESOURCES, 2019, : 229 - 234
  • [40] Microstructure and Mechanical Properties of Extruded Mg-Alloy Mg-Al-Ca-Mn-Zn
    Liu Y.
    Kang R.
    Feng X.
    Luo T.
    Li Y.
    Feng J.
    Cao T.
    Huang Q.
    Yang Y.
    Cailiao Yanjiu Xuebao/Chinese Journal of Materials Research, 2022, 36 (01): : 13 - 20